Literature DB >> 31484864

A New ISL1 Loss-of-Function Mutation Predisposes to Congenital Double Outlet Right Ventricle.

Zhi Wang1, Hao-Ming Song2, Fei Wang3, Cui-Mei Zhao2, Ri-Tai Huang4, Song Xue4, Ruo-Gu Li5, Xing-Biao Qiu5, Ying-Jia Xu6, Xing-Yuan Liu1, Yi-Qing Yang6,7,8.   

Abstract

Occurring in about 1% of all live births, congenital heart defects (CHDs) represent the most frequent type of developmental abnormality and account for remarkably increased infant morbidity and mortality. Aggregating studies demonstrate that genetic components have a key role in the occurrence of CHDs. Nevertheless, due to pronounced genetic heterogeneity, the genetic causes of CHDs remain unclear in most patients. In this research, 114 unrelated patients affected with CHDs and 218 unrelated individuals without CHDs served as controls were recruited. The coding regions and splicing donors/acceptors of the ISL1 gene, which codes for a transcription factor required for proper cardiovascular development, were screened for mutations by sequencing in all study participants. The functional characteristics of an identified ISL1 mutation were delineated with a dual-luciferase reporter assay system. As a result, a new heterozygous ISL1 mutation, NM_002202.2: c.225C>G; p. (Tyr75*), was discovered in an index patient with double outlet right ventricle and ventricular septal defect. Analysis of the proband's family unveiled that the mutation co-segregated with the CHD phenotype. The nonsense mutation was absent in the 436 control chromosomes. Biological analysis showed that the mutant ISL1 protein had no transcriptional activity. Furthermore, the mutation nullified the synergistic activation between ISL1 and TBX20, another CHD-associated transcription factor. This research for the first time links an ISL1 loss-of-function mutation to double outlet right ventricle in humans, which adds insight to the molecular pathogenesis underpinning CHDs, suggesting potential implications for timely personalized management of CHD patients.

Entities:  

Keywords:  Cardiovascular development; Congenital heart defect; Molecular genetics; Reporter gene assay; Transcription factor; Transgene

Mesh:

Substances:

Year:  2019        PMID: 31484864     DOI: 10.1536/ihj.18-685

Source DB:  PubMed          Journal:  Int Heart J        ISSN: 1349-2365            Impact factor:   1.862


  3 in total

1.  Novel Point Mutations in 3'-Untranslated Region of GATA4 Gene Are Associated with Sporadic Non-syndromic Atrial and Ventricular Septal Defects.

Authors:  Mehri Khatami; Sajedeh Ghorbani; Mojgan Rezaii Adriani; Sahar Bahaloo; Mehri Azami Naeini; Mohammad Mehdi Heidari; Mehdi Hadadzadeh
Journal:  Curr Med Sci       Date:  2021-10-15

Review 2.  Spotlight on Isl1: A Key Player in Cardiovascular Development and Diseases.

Authors:  Jie Ren; Danxiu Miao; Yanshu Li; Rui Gao
Journal:  Front Cell Dev Biol       Date:  2021-11-25

3.  A novel PRRX1 loss-of-function variation contributing to familial atrial fibrillation and congenital patent ductus arteriosus.

Authors:  Zun-Ping Ke; Gao-Feng Zhang; Yu-Han Guo; Yu-Min Sun; Jun Wang; Ning Li; Xing-Biao Qiu; Ying-Jia Xu; Yi-Qing Yang
Journal:  Genet Mol Biol       Date:  2022-03-30       Impact factor: 1.771

  3 in total

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